Numerical approximation of boundary value problems for curvature flow and elastic flow in Riemannian manifolds

Author:

Garcke Harald,Nürnberg Robert

Abstract

AbstractWe present variational approximations of boundary value problems for curvature flow (curve shortening flow) and elastic flow (curve straightening flow) in two-dimensional Riemannian manifolds that are conformally flat. For the evolving open curves we propose natural boundary conditions that respect the appropriate gradient flow structure. Based on suitable weak formulations we introduce finite element approximations using piecewise linear elements. For some of the schemes a stability result can be shown. The derived schemes can be employed in very different contexts. For example, we apply the schemes to the Angenent metric in order to numerically compute rotationally symmetric self-shrinkers for the mean curvature flow. Furthermore, we utilise the schemes to compute geodesics that are relevant for optimal interface profiles in multi-component phase field models.

Funder

Università degli Studi di Trento

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computational Mathematics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Rotational Solitons for the Curve Shortening Flow on Revolution Surfaces;Results in Mathematics;2024-06-16

2. Entropy Bounds for Self-Shrinkers with Symmetries;The Journal of Geometric Analysis;2023-12-07

3. A novel finite element approximation of anisotropic curve shortening flow;Interfaces and Free Boundaries;2023-10-07

4. Entropy bounds, compactness and finiteness theorems for embedded self-shrinkers with rotational symmetry;Journal für die reine und angewandte Mathematik (Crelles Journal);2022-11-11

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